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Magnetic performance enhancement in La-Ca-Co doped SrFe12O19 ferrite permanent magnets via cold isostatic pressing
by
Quan, X K
, Haseeb, M
, Sun, W Q
, Li, B S
, Liu, W Q
, Geng, Z W
, Liu, R M
, Hu, G H
, Yue, M
in
Alignment
/ Coercivity
/ Cold isostatic pressing
/ Cold pressing
/ crystallographic alignment
/ Crystallography
/ Density
/ ferrite permanent magnets
/ Ferrites
/ Heat treating
/ magnetic performance
/ Magnetic properties
/ Magnetism
/ Permanent magnets
/ Remanence
/ Sintering
/ SrFe
/ SrFe12O19 ferrite permanent magnets
2020
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Magnetic performance enhancement in La-Ca-Co doped SrFe12O19 ferrite permanent magnets via cold isostatic pressing
by
Quan, X K
, Haseeb, M
, Sun, W Q
, Li, B S
, Liu, W Q
, Geng, Z W
, Liu, R M
, Hu, G H
, Yue, M
in
Alignment
/ Coercivity
/ Cold isostatic pressing
/ Cold pressing
/ crystallographic alignment
/ Crystallography
/ Density
/ ferrite permanent magnets
/ Ferrites
/ Heat treating
/ magnetic performance
/ Magnetic properties
/ Magnetism
/ Permanent magnets
/ Remanence
/ Sintering
/ SrFe
/ SrFe12O19 ferrite permanent magnets
2020
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Magnetic performance enhancement in La-Ca-Co doped SrFe12O19 ferrite permanent magnets via cold isostatic pressing
by
Quan, X K
, Haseeb, M
, Sun, W Q
, Li, B S
, Liu, W Q
, Geng, Z W
, Liu, R M
, Hu, G H
, Yue, M
in
Alignment
/ Coercivity
/ Cold isostatic pressing
/ Cold pressing
/ crystallographic alignment
/ Crystallography
/ Density
/ ferrite permanent magnets
/ Ferrites
/ Heat treating
/ magnetic performance
/ Magnetic properties
/ Magnetism
/ Permanent magnets
/ Remanence
/ Sintering
/ SrFe
/ SrFe12O19 ferrite permanent magnets
2020
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Magnetic performance enhancement in La-Ca-Co doped SrFe12O19 ferrite permanent magnets via cold isostatic pressing
Journal Article
Magnetic performance enhancement in La-Ca-Co doped SrFe12O19 ferrite permanent magnets via cold isostatic pressing
2020
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Overview
The crystallographic alignment, microstructure and magnetic properties were studied for La0.6Ca0.6Sr0.1Fe12.4Co0.4O19 ferrite permanent magnets prepared with standard ceramic method. The effect of cold isostatic pressing (CIP) and sintering temperature on the structural and magnetic properties of the magnets were investigated. The CIP significantly improves the density of the green compact and final magnets, but undermines the crystallographic alignment of the magnets simultaneously. As a result, the remanence of the magnet achieves optimal value under the compromise between the increased density and the degraded alignment. Moreover, the coercivity of the magnet increases linearly with the increment of the CIP pressure due the fact that CIP processed samples bear more uniform and finer grains in favor of high coercivity. Under optimal CIP pressure and sintering temperature, the magnet obtains best magnetic properties of Br of 0.439 T, Hcj of 396 kA m−1, Hcb of 311 kA m−1, and (BH)maxof 35.8 kJ m−3.
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